scholarly article | Q13442814 |
P50 | author | Renée M Visser | Q59812815 |
P2093 | author name string | Rudi D'Hooge | |
Dieuwke Sevenster | |||
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Facilitation of fear extinction by novelty depends on dopamine acting on D1-subtype dopamine receptors in hippocampus | Q35279432 | ||
Revealing Context-Specific Conditioned Fear Memories with Full Immersion Virtual Reality | Q35532219 | ||
Microstimulation reveals opposing influences of prelimbic and infralimbic cortex on the expression of conditioned fear | Q35612931 | ||
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Resting cerebral metabolism correlates with skin conductance and functional brain activation during fear conditioning | Q35718174 | ||
Context and behavioral processes in extinction | Q35909902 | ||
Altered resting-state amygdala functional connectivity in men with posttraumatic stress disorder | Q36049093 | ||
Reward Modulation of Hippocampal Subfield Activation during Successful Associative Encoding and Retrieval | Q36085683 | ||
Extinction retention and fear renewal in a lifetime obsessive-compulsive disorder sample | Q36132946 | ||
The hippocampal-VTA loop: controlling the entry of information into long-term memory | Q36144286 | ||
Medial prefrontal pathways for the contextual regulation of extinguished fear in humans | Q36200246 | ||
Fear extinction in rodents: basic insight to clinical promise | Q36301877 | ||
Neuronal correlates of extinction learning are modulated by sex hormones | Q36330169 | ||
Functionally distinct amygdala subregions identified using DTI and high-resolution fMRI. | Q36336908 | ||
Distribution of cannabinoid receptors in the central and peripheral nervous system. | Q36441196 | ||
Evidence for area CA1 as a match/mismatch detector: A high‐resolution fMRI study of the human hippocampus | Q36485024 | ||
Prediction strength modulates responses in human area CA1 to sequence violations | Q36496938 | ||
How Administration of the Beta-Blocker Propranolol Before Extinction can Prevent the Return of Fear | Q36763153 | ||
Heterogeneity in threat extinction learning: substantive and methodological considerations for identifying individual difference in response to stress | Q36881843 | ||
Resting-state functional connectivity between amygdala and the ventromedial prefrontal cortex following fear reminder predicts fear extinction | Q36945162 | ||
Representational similarity analysis - connecting the branches of systems neuroscience | Q37020134 | ||
Hippocampal Erk mechanisms linking prediction error to fear extinction: roles of shock expectancy and contextual aversive valence | Q37141871 | ||
Biological substrates of emotional reactivity and regulation in adolescence during an emotional go-nogo task | Q37147021 | ||
Renewal of conditioned fear in a novel context is associated with hippocampal activation and connectivity | Q37241770 | ||
Functional connectivity of the human amygdala using resting state fMRI | Q37326109 | ||
Aversive learning enhances perceptual and cortical discrimination of indiscriminable odor cues | Q37373344 | ||
Altered Resting-State Functional Connectivity of Basolateral and Centromedial Amygdala Complexes in Posttraumatic Stress Disorder | Q37409581 | ||
The structural integrity of an amygdala-prefrontal pathway predicts trait anxiety | Q37469424 | ||
Hippocampal Mismatch Signals Are Modulated by the Strength of Neural Predictions and Their Similarity to Outcomes | Q37504984 | ||
Changing fear: the neurocircuitry of emotion regulation | Q37587742 | ||
Noradrenergic modulation of extinction learning and exposure therapy | Q37636840 | ||
Hippocampal molecular mechanisms involved in the enhancement of fear extinction caused by exposure to novelty | Q37674530 | ||
Molecular specificity of multiple hippocampal processes governing fear extinction | Q37748717 | ||
Stress effects on memory: an update and integration | Q37902769 | ||
The conditions that promote fear learning: Prediction error and Pavlovian fear conditioning | Q38107724 | ||
Updated meta-analysis of classical fear conditioning in the anxiety disorders. | Q38363763 | ||
Associative learning increases trial-by-trial similarity of BOLD-MRI patterns | Q38486056 | ||
Abnormal Fear Memory as a Model for Posttraumatic Stress Disorder | Q38559924 | ||
Finding the engram. | Q38569744 | ||
Pattern Analyses Reveal Separate Experience-Based Fear Memories in the Human Right Amygdala | Q38667282 | ||
Skin Conductance Responses and Neural Activations During Fear Conditioning and Extinction Recall Across Anxiety Disorders | Q38731219 | ||
Brain activation during fear extinction predicts exposure success | Q38786720 | ||
Amygdala-Cortical Connectivity: Associations with Anxiety, Development, and Threat. | Q38815012 | ||
First Steps in Using Multi-Voxel Pattern Analysis to Disentangle Neural Processes Underlying Generalization of Spider Fear | Q38852991 | ||
Dissociation of within- and between-session extinction of conditioned fear | Q39288073 | ||
Molecular mechanisms underlying formation of long-term reward memories and extinction memories in the honeybee (Apis mellifera) | Q27013578 | ||
High Current Anxiety Symptoms, But Not a Past Anxiety Disorder Diagnosis, are Associated with Impaired Fear Extinction. | Q27305059 | ||
Emotion circuits in the brain | Q27860733 | ||
Memory Engram Cells Have Come of Age | Q28085533 | ||
The role of ventromedial prefrontal cortex in the recovery of extinguished fear | Q28143094 | ||
Fear memories require protein synthesis in the amygdala for reconsolidation after retrieval | Q28144792 | ||
Amygdala and ventromedial prefrontal cortex are inversely coupled during regulation of negative affect and predict the diurnal pattern of cortisol secretion among older adults | Q28235364 | ||
Fear Extinction as a Model for Translational Neuroscience: Ten Years of Progress | Q28254365 | ||
Systemic blockade of D2-like dopamine receptors facilitates extinction of conditioned fear in mice | Q28265467 | ||
Effects of post-extinction l-DOPA administration on the spontaneous recovery and reinstatement of fear in a human fMRI study | Q28265839 | ||
Single dose of L-dopa makes extinction memories context-independent and prevents the return of fear | Q28292444 | ||
Dopamine and extinction: a convergence of theory with fear and reward circuitry | Q28302559 | ||
Predicting the orientation of invisible stimuli from activity in human primary visual cortex | Q28310237 | ||
Prolonged fear responses in mice lacking dopamine D1 receptor | Q28506826 | ||
Aversive learning modulates cortical representations of object categories | Q28654773 | ||
Neural mechanisms of extinction learning and retrieval | Q29616240 | ||
Beyond mind-reading: multi-voxel pattern analysis of fMRI data | Q29616367 | ||
5-HTTLPR polymorphism impacts human cingulate-amygdala interactions: a genetic susceptibility mechanism for depression | Q29618835 | ||
Extinction learning in humans: role of the amygdala and vmPFC | Q29619325 | ||
The contextual brain: implications for fear conditioning, extinction and psychopathology | Q30372063 | ||
Neural circuits and mechanisms involved in Pavlovian fear conditioning: a critical review | Q30417952 | ||
Fear renewal preferentially activates ventral hippocampal neurons projecting to both amygdala and prefrontal cortex in rats. | Q30418429 | ||
Psychological and neural mechanisms of experimental extinction: a selective review | Q30419931 | ||
Cholinergic blockade frees fear extinction from its contextual dependency | Q30443020 | ||
Neural substrates of individual differences in human fear learning: Evidence from concurrent fMRI, fear-potentiated startle, and US-expectancy data | Q30465502 | ||
Positron emission tomographic imaging of neural correlates of a fear acquisition and extinction paradigm in women with childhood sexual-abuse-related post-traumatic stress disorder | Q30472193 | ||
Spine-type-specific recruitment of newly synthesized AMPA receptors with learning | Q30488055 | ||
Human fear conditioning and extinction in neuroimaging: a systematic review | Q30489073 | ||
Distinct memory signatures in the hippocampus: intentional States distinguish match and mismatch enhancement signals | Q30492195 | ||
Synaptic correlates of fear extinction in the amygdala | Q30493920 | ||
Contextual-specificity of short-delay extinction in humans: renewal of fear-potentiated startle in a virtual environment | Q30496582 | ||
Infralimbic D2 Receptors Are Necessary for Fear Extinction and Extinction-Related Tone Responses | Q30497375 | ||
Dissociable roles of prelimbic and infralimbic cortices, ventral hippocampus, and basolateral amygdala in the expression and extinction of conditioned fear | Q30497715 | ||
Response to learned threat: An FMRI study in adolescent and adult anxiety | Q30548225 | ||
Overlapping neural systems mediating extinction, reversal and regulation of fear | Q30558405 | ||
Stimulation of Medial Prefrontal Cortex Decreases the Responsiveness of Central Amygdala Output Neurons | Q48189814 | ||
Positive and negative modulation of word learning by reward anticipation. | Q48226628 | ||
Altered processing of contextual information during fear extinction in PTSD: an fMRI study | Q48230248 | ||
Effects of rapid eye movement sleep deprivation on fear extinction recall and prediction error signaling | Q48289221 | ||
Neocortical modulation of the amygdala response to fearful stimuli | Q48361349 | ||
Extraction of prefronto-amygdalar pathways by combining probability maps | Q48409365 | ||
Rethinking feelings: an FMRI study of the cognitive regulation of emotion | Q48421581 | ||
Human Amygdala Activation during Conditioned Fear Acquisition and Extinction: a Mixed-Trial fMRI Study | Q48453514 | ||
Brief uncontrollable stress causes dendritic retraction in infralimbic cortex and resistance to fear extinction in mice. | Q48523175 | ||
Quantitative investigation of connections of the prefrontal cortex in the human and macaque using probabilistic diffusion tractography. | Q48762085 | ||
Acute and sustained effects of cognitive emotion regulation in major depression | Q48957825 | ||
Neural substrates for voluntary suppression of negative affect: a functional magnetic resonance imaging study | Q49081375 | ||
Neural Underpinnings of Cortisol Effects on Fear Extinction. | Q49832523 | ||
How do memory systems detect and respond to novelty? | Q50169091 | ||
Direct activation of the ventral striatum in anticipation of aversive stimuli | Q39386496 | ||
Quantifying learning-dependent changes in the brain: Single-trial multivoxel pattern analysis requires slow event-related fMRI. | Q39788752 | ||
Recall of fear extinction in humans activates the ventromedial prefrontal cortex and hippocampus in concert | Q40252502 | ||
Distinct Hippocampal Pathways Mediate Dissociable Roles of Context in Memory Retrieval. | Q40521158 | ||
Cerebellar vermis contributes to the extinction of conditioned fear | Q40685053 | ||
Context, time, and memory retrieval in the interference paradigms of Pavlovian learning | Q40832047 | ||
Cerebellar Contribution to Context Processing in Extinction Learning and Recall. | Q41088003 | ||
Representational similarity analysis offers a preview of the noradrenergic modulation of long-term fear memory at the time of encoding. | Q41368909 | ||
States of curiosity modulate hippocampus-dependent learning via the dopaminergic circuit. | Q41821921 | ||
Induction of fear extinction with hippocampal-infralimbic BDNF | Q41891373 | ||
Prediction error demarcates the transition from retrieval, to reconsolidation, to new learning | Q41963331 | ||
Long-range connectivity defines behavioral specificity of amygdala neurons | Q42241299 | ||
Switching on and off fear by distinct neuronal circuits. | Q42438392 | ||
Effects of novelty and habituation on acetylcholine, GABA, and glutamate release from the frontal cortex and hippocampus of freely moving rats | Q42510356 | ||
Empirical support for an involvement of the mesostriatal dopamine system in human fear extinction | Q42574346 | ||
Cortisol enhances neural differentiation during fear acquisition and extinction in contingency aware young women | Q42923992 | ||
Long-term expression of human contextual fear and extinction memories involves amygdala, hippocampus and ventromedial prefrontal cortex: a reinstatement study in two independent samples. | Q43045811 | ||
Dissociating response systems: erasing fear from memory | Q43104140 | ||
Blockade of dopamine activity in the nucleus accumbens impairs learning extinction of conditioned fear | Q43162606 | ||
Dopamine responses comply with basic assumptions of formal learning theory | Q43673182 | ||
A meta-analysis of instructed fear studies: implications for conscious appraisal of threat | Q43752063 | ||
Exposure to stress attenuates fear retrieval in healthy men. | Q44254725 | ||
Hippocampal activation during extinction learning predicts occurrence of the renewal effect in extinction recall. | Q44764642 | ||
Greater resistance to extinction of electrodermal responses conditioned to potentially phobic CSs: a noncognitive process? | Q44768478 | ||
No evidence for enhanced extinction memory consolidation through noradrenergic reuptake inhibition-delayed memory test and reinstatement in human fMRI. | Q44773470 | ||
Reward-related FMRI activation of dopaminergic midbrain is associated with enhanced hippocampus-dependent long-term memory formation | Q45252807 | ||
An investigation into the functional and structural connectivity of the Default Mode Network | Q45775472 | ||
Reward-motivated learning: mesolimbic activation precedes memory formation. | Q45987353 | ||
The neural correlates of negative prediction error signaling in human fear conditioning | Q46129290 | ||
Facilitation of contextual fear memory extinction and anti-anxiogenic effects of AM404 and cannabidiol in conditioned rats | Q46426993 | ||
Opposite action of hippocampal CB1 receptors in memory reconsolidation and extinction. | Q46539522 | ||
Disruptive effect of midazolam on fear memory reconsolidation: decisive influence of reactivation time span and memory age. | Q46570237 | ||
The role of prefrontal cortex CB1 receptors in the modulation of fear memory | Q46597779 | ||
Microinfusion of the D1 receptor antagonist, SCH23390 into the IL but not the BLA impairs consolidation of extinction of auditory fear conditioning | Q46621836 | ||
Hippocampal inactivation disrupts the acquisition and contextual encoding of fear extinction. | Q46726663 | ||
Putting feelings into words: affect labeling disrupts amygdala activity in response to affective stimuli | Q46729466 | ||
Deficits in conditioned fear extinction in obsessive-compulsive disorder and neurobiological changes in the fear circuit | Q46972465 | ||
Pharmacological interaction between 3,4-methylenedioxymethamphetamine (ecstasy) and paroxetine: pharmacological effects and pharmacokinetics. | Q46985552 | ||
Association of Resting Metabolism in the Fear Neural Network With Extinction Recall Activations and Clinical Measures in Trauma-Exposed Individuals | Q47578494 | ||
Neural signatures of human fear conditioning: an updated and extended meta-analysis of fMRI studies | Q47678357 | ||
Fear-potentiated startle processing in humans: Parallel fMRI and orbicularis EMG assessment during cue conditioning and extinction. | Q47738873 | ||
Human ventromedial prefrontal cortex and the positive affective processing of safety signals | Q47786909 | ||
Flexibility in the face of fear: Hippocampal-prefrontal regulation of fear and avoidance | Q47864733 | ||
Activation of Nigrostriatal Dopamine Neurons during Fear Extinction Prevents the Renewal of Fear | Q47867686 | ||
Dispositional cognitive reappraisal modulates the neural correlates of fear acquisition and extinction | Q47891515 | ||
Hyper-response to Novelty Increases c-Fos Expression in the Hippocampus and Prefrontal Cortex in a Rat Model of Schizophrenia. | Q47928802 | ||
Hippocampus-driven feed-forward inhibition of the prefrontal cortex mediates relapse of extinguished fear | Q48102794 | ||
Hippocampus duality: Memory and novelty detection are subserved by distinct mechanisms. | Q48109241 | ||
Neural pattern similarity predicts long-term fear memory | Q48151667 | ||
Brain structural connectivity and context-dependent extinction memory | Q48151845 | ||
The role of mesoprefrontal dopamine neurons in the acquisition and expression of conditioned fear in the rat. | Q48161151 | ||
Neural correlates of trait anxiety in fear extinction | Q48164804 | ||
Measuring neural representations with fMRI: practices and pitfalls | Q30641161 | ||
Hippocampal inactivation disrupts contextual retrieval of fear memory after extinction. | Q32062025 | ||
An unexpected sequence of events: mismatch detection in the human hippocampus | Q33264846 | ||
Dopamine signals for reward value and risk: basic and recent data | Q33563207 | ||
A genetic variant BDNF polymorphism alters extinction learning in both mouse and human | Q33690935 | ||
Sex differences in extinction recall in posttraumatic stress disorder: a pilot fMRI study | Q33740917 | ||
Retrieval and reconsolidation: toward a neurobiology of remembering | Q33885220 | ||
The structural and functional connectivity of the amygdala: from normal emotion to pathological anxiety | Q33887634 | ||
Segregated populations of hippocampal principal CA1 neurons mediating conditioning and extinction of contextual fear | Q33941014 | ||
Functional MRI of human amygdala activity during Pavlovian fear conditioning: stimulus processing versus response expression | Q33964741 | ||
Maximizing exposure therapy: an inhibitory learning approach | Q33968137 | ||
The emotional brain, fear, and the amygdala | Q33972788 | ||
The selective norepinephrine reuptake inhibitor antidepressant reboxetine: pharmacological and clinical profile. | Q33976127 | ||
A multidimensional meta-analysis of psychotherapy and pharmacotherapy for obsessive-compulsive disorder | Q33982952 | ||
Intrinsic connectivity between the hippocampus, nucleus accumbens, and ventral tegmental area in humans. | Q33985093 | ||
Structural and functional aspects relating to cost and benefit of rich club organization in the human cerebral cortex | Q34027760 | ||
Endocannabinoid signaling in the brain | Q34125520 | ||
Cortisol modifies extinction learning of recently acquired fear in men. | Q34152472 | ||
Context, ambiguity, and unlearning: sources of relapse after behavioral extinction | Q34159550 | ||
Prefrontocortical dopamine loss in rats delays long-term extinction of contextual conditioned fear, and reduces social interaction without affecting short-term social interaction memory | Q34182918 | ||
Long-term outcomes of cognitive-behavioral treatments for posttraumatic stress disorder among female rape survivors | Q34241590 | ||
Amygdala and hippocampal activity during acquisition and extinction of human fear conditioning. | Q34366428 | ||
Functional gene polymorphisms in the serotonin system and traumatic life events modulate the neural basis of fear acquisition and extinction | Q34408119 | ||
BDNF function in adult synaptic plasticity: the synaptic consolidation hypothesis | Q34442760 | ||
Storage, recall, and novelty detection of sequences by the hippocampus: Elaborating on the SOCRATIC model to account for normal and aberrant effects of dopamine | Q34456332 | ||
Memory consolidation of fear conditioning: bi-stable amygdala connectivity with dorsal anterior cingulate and medial prefrontal cortex | Q34457207 | ||
Reconsolidation and extinction of conditioned fear: inhibition and potentiation. | Q34569427 | ||
Coming to terms with fear | Q34659513 | ||
Impaired contextual modulation of memories in PTSD: an fMRI and psychophysiological study of extinction retention and fear renewal | Q34674852 | ||
Neural circuitry underlying the regulation of conditioned fear and its relation to extinction | Q34702505 | ||
Functions of cannabinoid receptors in the hippocampus | Q34750566 | ||
Beyond extinction: erasing human fear responses and preventing the return of fear | Q34945597 | ||
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 113-126 | |
P577 | publication date | 2018-07-04 | |
P1433 | published in | Neurobiology of Learning and Memory | Q15764599 |
P1476 | title | A translational perspective on neural circuits of fear extinction: Current promises and challenges | |
P478 | volume | 155 |
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